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Dr Mayes and her group have come up with a new class of plastics called "baroplastics" that can be melted and formed into products not by heating, but by placing the materials under pressure.
A lot of thermodynamic information can be derived from investigation of materials under pressure or temperature.
Existing methods of measuring flowability of powders are described in this paper, and a new methodology is introduced to measure friction between granular materials under pressure induced with uniaxial compression.
A high pressure differential scanning calorimeter (HP-DSC) based on an original design of Höhne and co-workers has been constructed at the University of Aberdeen to allow the characterisation of the thermal behaviour of materials under pressure in both fundamental and technological research areas, for example, in the offshore and pharmaceutical industries.
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It is found that the topological and chemical atomic structures of the Pd81Si19 glassy alloy do not change much with pressure, indicating the stability of this material under pressure.
For a Ba0.5Sr0.5Co0.8Fe0.2O3−δ membrane supported on a porous substrate of the same material under pressure-vacuum operation, the optimal configuration in terms of minimizing the risk of fracture by ensuring only compressive stresses in the component is achieved by placing the support on the feed side of the membrane.
As a result, the subsurface deformation of germanium in nanometric cutting becomes complicated and the materials under this pressure turn into the amorphous structure directly because of the complex pressure.
By combining the powerful synchrotron X-ray source and fast switching between white (for X-ray diffraction) and monochromatic (for absorption imaging) modes, this technique provides the high-pressure community with a unique opportunity to image the three-dimensional volume, texture, and microstructure of materials under high pressure and temperature.
The mineral's new name, bridgmanite, honors 1946 Nobel Prize winner Percy Bridgman, a physicist who pioneered the analyses of minerals and other materials under high pressure.
HPXRD is a popular method in geophysics for testing mantle materials under extreme pressure and temperature conditions (Ohuchi et al. 2011).
The 3D tomographic imaging capability based on X-ray absorption was a major step toward investigating complex materials under high pressure and temperature.
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